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首页> 外文期刊>Journal of Circuits, Systems, and Computers >Reconfigurable Fractional-Order Filter with Electronically Controllable Slope of Attenuation, Pole Frequency and Type of Approximation
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Reconfigurable Fractional-Order Filter with Electronically Controllable Slope of Attenuation, Pole Frequency and Type of Approximation

机译:具有电子控制的衰减斜率,磁极频率和近似类型的可重构分数阶滤波器

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This paper presents design of electronically reconfigurable fractional-order filter that is able to be con figured to operate as fractional-order low-pass filter (FLPF) or fractional-order high-pass filter (FHPF). Its slope of attenuation between pass band and stop band, i.e., order of the filter, is electronically adjustable in the range between 1 and 2. Also, pole frequency can be electronically controlled independently with respect to other tuned parameters. Moreover, particular type of approximation can be also controlled electronically. This feature set is available both for FLPF and FHPF-type of response. Presented structure of the filter is based on well-known follow-the-leader feedback (FLF) topology adjusted in our case for utilization with just simple active elements operational transconductance amplifiers (OTAs) and adjustable current amplifiers (ACAs), both providing possibility to control its key parameter electronically. This paper explains how reconfigurable third-order FLF topology is used in order to approximate both FLPF and FHPF in concerned frequency band of interest. Design is supported by PSpice simulations for three particular values of order of the filter (1.25, 1.5, 1.75), for several values of pole frequency and for two particular types of approximation forming the shape of both the magnitude and phase response. Moreover, theoretical presumptions are successfully con firmed by laboratory measurements with prepared prototype based on behavioral modeling.
机译:本文介绍了电子可重配置分数阶滤波器的设计,该滤波器可配置为分数阶低通滤波器(FLPF)或分数阶高通滤波器(FHPF)。其通带与阻带之间的衰减斜率(即滤波器的阶数)可在1到2之间的范围内进行电子调节。而且,极点频率可以相对于其他调谐参数进行电子控制。此外,也可以电子方式控制特定类型的逼近。此功能集可用于FLPF和FHPF类型的响应。滤波器的结构基于众所周知的跟随者反馈(FLF)拓扑,在我们的案例中经过了调整,可用于简单的有源元件,运算跨导放大器(OTA)和可调电流放大器(ACA),两者都为电子控制其关键参数。本文解释了如何使用可重配置的三阶FLF拓扑,以便在感兴趣的相关频带中近似FLPF和FHPF。 PSpice仿真为滤波器的三个特定阶次值(1.25、1.5、1.75),几个极点频率值以及两个形成幅度和相位响应形状的近似类型提供了设计支持。而且,通过实验室测量以及基于行为模型的准备好的原型,可以成功地确定理论上的假设。

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